LMH™ Series, Laser Drivers

Results:
4
Manufacturer
Series
Operating Temperature
Grade
Mounting Type
Current - Supply
Current - Bias
Supplier Device Package
Type
Qualification
Current - Modulation
Number of Channels
Package / Case
Data Rate
Voltage - Supply
Results remaining4
Applied Filters:
LMH™
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeOperating TemperatureVoltage - SupplyNumber of ChannelsData RatePackage / CaseSeriesTypeCurrent - SupplyCurrent - ModulationSupplier Device PackageGradeCurrent - BiasQualification
LMH6525SPX/NOPB
IC LASER DRVR 5.5V 28UQFN
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
4.5V ~ 5.5V
4
-
28-UFQFN Exposed Pad
LMH™
Laser Diode Driver (CD/DVD)
33 mA
-
28-UQFN (5x5)
-
-
-
LMH6526SPX/NOPB
IC LASER DRVR 5.5V 28UQFN
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
4.5V ~ 5.5V
4
-
28-UFQFN Exposed Pad
LMH™
Laser Diode Driver (CD/DVD)
33 mA
-
28-UQFN (5x5)
-
-
-
LMH6526SP/NOPB
IC LASER DRVR 5.5V 28UQFN
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
4.5V ~ 5.5V
4
-
28-UFQFN Exposed Pad
LMH™
Laser Diode Driver (CD/DVD)
33 mA
-
28-UQFN (5x5)
-
-
-
LMH6525SP/NOPB
IC LASER DRVR 5.5V 28UQFN
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
4.5V ~ 5.5V
4
-
28-UFQFN Exposed Pad
LMH™
Laser Diode Driver (CD/DVD)
33 mA
-
28-UQFN (5x5)
-
-
-

About  Laser Drivers

Laser Drivers are electronic devices used to control and manage the power supply to semiconductor laser devices. They are a crucial component in optical communication systems, enabling precise and efficient operation of lasers. Laser drivers, which fall under the Power Management Integrated Circuit (PMIC) category, are specifically designed to provide controlled current sources for semiconductor lasers from a constant-voltage power source. Their primary function is to regulate the current flowing through the laser diode, ensuring optimal performance and preventing damage due to overcurrent or undercurrent conditions. One key feature of Laser Driver PMICs is their ability to incorporate feedback mechanisms. These mechanisms monitor the optical power emitted by the laser device and provide real-time feedback to the PMIC. This feedback allows the PMIC to adjust and optimize the current supplied to the laser, maintaining consistent power output and compensating for any variations or degradation in the laser's performance. Laser Driver PMICs also possess high-frequency modulation capabilities. This means they can rapidly modulate the current supplied to the laser, enabling the encoding and transmission of information through variations in the laser's output intensity. This modulation capability is essential for applications in optical communication systems, where data transmission and signaling require high-speed modulation of the laser's output. In addition to current regulation and modulation, Laser Driver PMICs provide stable and regulated current sources for the laser devices. They ensure that the laser operates within its specified current range, maintaining reliable performance and preventing any potential damage to the laser diode. Overall, ICs-PMIC-Laser Drivers are critical components in optical communication systems, managing and controlling the power supply to semiconductor lasers. With their feedback mechanisms and high-frequency modulation capabilities, these devices enable precise power management, reliable operation, and facilitate high-speed data transmission through lasers.